Fabrication and mechanical characterization of 3D electrospun scaffolds for tissue engineering

被引:43
|
作者
Wright, L. D. [1 ]
Young, R. T. [1 ]
Andric, T. [1 ]
Freeman, J. W. [1 ]
机构
[1] Virginia Polytech Inst & State Univ, Virginia Tech, Wake Forest Sch Biomed Engn & Sci, Blacksburg, VA 24061 USA
关键词
NANOFIBROUS SCAFFOLD; FIBERS; FIBROBLAST;
D O I
10.1088/1748-6041/5/5/055006
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Electrospinning is a polymer processing technique that produces fibrous structures comparable to the extracellular matrix of many tissues. Electrospinning, however, has been severely limited in its tissue engineering capabilities because this technique has produced few three-dimensional structures. Sintering of electrospun materials provides a method to fabricate unique architectures and allow much larger structures to be made. Electrospun mats were sintered into strips and cylinders, and their tensile and compressive mechanical properties were measured. In addition, electrospun materials with salt pores (salt embedded within the material and then leached out) were fabricated to improve porosity of the electrospun materials for tissue engineering scaffolds. Sintered electrospun poly(d, l-lactide) and poly(l-lactide) (PDLA/PLLA) materials have higher tensile mechanical properties (modulus: 72.3 MPa, yield: 960 kPa) compared to unsintered PLLA (modulus: 40.36 MPa, yield: 675.5 kPa). Electrospun PDLA/PLLA cylinders with and without salt-leached pores had compressive moduli of 6.69 and 26.86 MPa, respectively, and compressive yields of 1.36 and 0.56 MPa, respectively. Sintering of electrospun materials is a novel technique that improves electrospinning application in tissue engineering by increasing the size and types of electrospun structures that can be fabricated.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Fabrication of Piezoelectric Electrospun Termite Nest-like 3D Scaffolds for Tissue Engineering
    Muenwacha, Thanapon
    Weeranantanapan, Oratai
    Chudapongse, Nuannoi
    Diaz Sanchez, Francisco Javier
    Maensiri, Santi
    Radacsi, Norbert
    Nuansing, Wiwat
    [J]. MATERIALS, 2021, 14 (24)
  • [2] Fabrication and mechanical characterization of 3D printed vertical uniform and gradient scaffolds for bone and osteochondral tissue engineering
    Bittner, Sean M.
    Smith, Brandon T.
    Diaz-Gomez, Luis
    Hudgins, Carrigan D.
    Melchiorri, Anthony J.
    Scott, David W.
    Fisher, John P.
    Mikos, Antonios G.
    [J]. ACTA BIOMATERIALIA, 2019, 90 : 37 - 48
  • [3] Mimicking nature: Fabrication of 3D anisotropic electrospun polycaprolactone scaffolds for cartilage tissue engineering applications
    Girao, Andre F.
    Semitela, Angela
    Ramalho, Goncalo
    Completo, Antonio
    Marques, Paula A. A. P.
    [J]. COMPOSITES PART B-ENGINEERING, 2018, 154 : 99 - 107
  • [4] 3D fabrication methods for producing tissue engineering scaffolds
    Gadegaard, N.
    Seunarine, K.
    Meredith, D. O.
    Khan, M. A.
    Tormen, M.
    Wilkinson, C. D. W.
    Riehle, M. O.
    [J]. MICROPROCESSES AND NANOTECHNOLOGY 2007, DIGEST OF PAPERS, 2007, : 410 - +
  • [5] Design, Fabrication, and Mechanical Properties of High Resolution 3D Printed Tissue Engineering Scaffolds
    Walker, J. M.
    Becker, M.
    Dean, D.
    [J]. TISSUE ENGINEERING PART A, 2016, 22 : S59 - S59
  • [6] Fabrication and characterization of electrospun osteon mimicking scaffolds for bone tissue engineering
    Andric, T.
    Sampson, A. C.
    Freeman, J. W.
    [J]. MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2011, 31 (01): : 2 - 8
  • [7] Electrospun 3D Scaffolds for Tissue Regeneration
    Kumar, T. S. Sampath
    Chakrapani, V. Yogeshwar
    [J]. CUTTING-EDGE ENABLING TECHNOLOGIES FOR REGENERATIVE MEDICINE, 2018, 1078 : 29 - 47
  • [8] Decorating 3D Printed Scaffolds with Electrospun Nanofiber Segments for Tissue Engineering
    Li, Ruiquan
    McCarthy, Alec
    Zhang, Yu Shrike
    Xie, Jingwei
    [J]. ADVANCED BIOSYSTEMS, 2019, 3 (12)
  • [9] Electrospun conductive nanofibrous scaffolds for engineering cardiac tissue and 3D bioactuators
    Wang, Ling
    Wu, Yaobin
    Hu, Tianli
    Guo, Baolin
    Ma, Peter X.
    [J]. ACTA BIOMATERIALIA, 2017, 59 : 68 - 81
  • [10] Fabrication and characterization of hybrid PCL/PEG 3D scaffolds for potential tissue engineering applications
    Hoque, M. Enamul
    Meng, Terrence Teh Hooi
    Chuan, Y. Leng
    Chowdhury, Moniruddin
    Prasad, R. G. S. V.
    [J]. MATERIALS LETTERS, 2014, 131 : 255 - 258